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Reactive Power Dispatch Method in Wind Farms to Improve the Lifetime of Power Converter Considering Wake Effect

机译:考虑唤醒效应的风电场无功分配方法可改善功率变换器的使用寿命

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摘要

In wind farms (WF), the most popular and commonly implemented active power control method is the maximum power point tracking (MPPT). Due to the wake effect, the upstream wind turbine (WT) in WFs has more active power generation than the downstream WT at the wind directions and wind speeds that the WF has wake loss. In the case that WTs support the voltage control by reactive power, the upstream WT's power converter may have shorter lifetime even below the industrial standard. In this paper, based on the analysis of the wake effect, the reactive power capability of the doubly fed induction generator (DFIG) WT, and the lifetime of the DFIG WT's power converter, a reactive power dispatch method is proposed in the WF with DFIG WTs to improve the lifetime of the upstream WT's power converter. The proposed reactive power dispatch method is analyzed and demonstrated by the simulation on a WF with 80 DFIG WTs. It can be concluded that, compared with the traditional reactive power dispatch method, the proposed method can increase the lifetime of the upstream WT's power converter.
机译:在风电场(WF)中,最流行和最常用的有功功率控制方法是最大功率点跟踪(MPPT)。由于尾流效应,WF中的上游风力涡轮机(WT)在风向和风速方面具有比下游WT更多的主动发电,而WF具有尾流损失。在WT支持通过无功功率进行电压控制的情况下,上游WT的功率转换器的寿命可能会缩短,甚至低于工业标准。本文通过对唤醒效应,双馈感应发电机(DFIG)WT的无功功率能力以及DFIG WT功率转换器的寿命的分析,提出了一种采用DFIG的WF的无功功率分配方法WT可以提高上游WT功率转换器的寿命。通过在具有80个DFIG WT的WF上的仿真对所提出的无功功率分配方法进行了分析和演示。可以得出结论,与传统的无功功率分配方法相比,该方法可以增加上游WT功率变换器的寿命。

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